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Flight Behavior of Individual Aerial Insectivores Revealed by Novel Altitudinal Dataloggers

机译:新型垂直数据记录仪揭示的单个昆虫食虫的飞行行为

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摘要

Swallows and martins (Aves: Hirundinidae) are well-studied with respect to their breeding biology, but major aspects of their individual aerial movement behavior and ecology are relatively poorly documented. We deployed a novel tag technology, an altitude datalogger, on breeding populations of Purple Martin (Progne subis), Tree Swallow (Tachycineta bicolor), and Barn Swallow (Hirundo rustica) in upstate New York during the summer of 2016, providing individual-level flight data on a per minute basis. Using mixed models, we investigated differences in flight altitudes across species and varying atmospheric conditions. The major findings were: 1) three species spent significantly different proportions of their time in distinct aerial strata despite extensive behavioral plasticity, 2) individuals of each species responded differently to atmospheric conditions depending on the time of day and their altitude, and 3) the species differed from one another in the relationships between their flight altitudes and weather variables, suggesting different strategies for tracking their environment and/or prey. More research is needed to accurately determine the relationships between specific meteorological variables and altitude. We encourage broader use of this methodology to better understand the behavior and ecology of aerial insectivores globally.
机译:燕子和马丁(Aves:Hirundinidae)在繁殖生物学方面得到了很好的研究,但是其个体空中运动行为和生态学的主要方面却鲜有文献记载。我们在2016年夏季对纽约州北部的紫马丁(Progne subis),树燕子(Tachycineta bicolor)和巴恩燕子(Hirundo Rustica)的繁殖种群部署了一种新的标签技术,海拔数据记录器,提供了个体水平每分钟的飞行数据。使用混合模型,我们调查了跨物种和不同大气条件的飞行高度差异。主要发现是:1)尽管行为行为可塑性大,但三种物种在不同的空中层中所花费的时间比例明显不同; 2)每个物种的个体对大气条件的响应取决于一天中的时间和海拔高度,以及3)物种之间的飞行高度和天气变量之间的关系互不相同,这提示了追踪其环境和/或猎物的不同策略。为了准确确定特定的气象变量与海拔之间的关系,还需要进行更多的研究。我们鼓励广泛使用此方法,以更好地了解全球气生食虫动物的行为和生态。

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